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Process capability control procedure for electrical machines by using a six-sigma process for achieving six-sigma quality level

机译:通过使用六西格玛过程实现六西格玛质量水平的电机过程能力控制程序

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摘要

An overall six-sigma process (SSP) that includes a novel process capability control (PCC) procedure is presented for satisfying a six-sigma level for a -value as well as a mean value of target performance. An example of this process is present for the efficiency and torque ripple in a spoke-type permanent magnet motor considering the manufacturing tolerances of five rotor dimensions. In this context, six-sigma means that the probability of failure of the product or system is 0.00034%. A novel SSP with a PCC procedure is suggested for designing electrical machines. In this procedure, three possible PCC methods were determined based on the definition of the -value. Next, each method was carried out to achieve the target -value and to illustrate the advantages and possible issues associated with each method. Finally, the authors showed that the suggested PCC procedure effectively achieves the target -value of the motor and can be widely used for the design of electrical machines.
机译:提出了一种包括新颖的过程能力控制(PCC)程序的整体六西格玛过程(SSP),用于满足目标性能的-值和平均值的六西格玛水平。考虑到五个转子尺寸的制造公差,针对辐条型永磁电动机中的效率和转矩脉动提供了此过程的示例。在这种情况下,六个西格玛表示产品或系统发生故障的概率为0.00034%。建议采用带有PCC程序的新型SSP设计电机。在此过程中,根据-value的定义确定了三种可能的PCC方法。接下来,执行每种方法以达到目标值并说明每种方法的优点和可能出现的问题。最后,作者表明,所提出的PCC程序可以有效地实现电动机的目标值,并且可以广泛用于电机设计。

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